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The reduction of total harmonic distortion and electromagnetic interference in high pressure sodium street lighting using single stage electronic ballast

机译:使用单级电子镇流器减少高压钠街灯中的总谐波失真和电磁干扰

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摘要

This paper presents the design of single stage electronic ballast for a conventional 250W High Pressure Sodium (HPS) street lighting. Historically the HPS street lighting operating hours is from sunset to dawn which is 12 hours in full brightness. The existing conventional street lighting HPS are powered by magnetic ballasts. The magnetic ballast is a device which consists of coil and core. It is an uncontrolled device, not energy efficient and generate flicker before it can give steady light. The use of electronic ballast provides a rapid start and energy efficient but will create electromagnetic interference and harmonic. This will reduce the circuit performance. To overcome the problems, the single stage design electronic ballast is used for the HPS lamp. The effect of the electromagnetic interference (EMI) and harmonic to the designed system is assessed. This is performed in three different stages; (i) with and without EMI filter, (ii) the half-bridge and (iii) the full-bridge inverter. For stage (ii) and (iii), the comparison of harmonic produced in electronic ballast was evaluated. The operating frequency for electronic ballast is 68 kHz. The findings show that the Total Harmonic Distortion current (THDi) of 5.55% for full bridge inverter compared to the half bridge inverter with THDi of 8.73%. A reduction of 36% of THD is obtained when full bridge inverter is applied. The current waveform result indicates a reduction of 25% without EMI filter from the original waveform. The reduction of both EMI and THDi can give benefit to street lighting system and energy efficiency.
机译:本文介绍了常规250W高压钠(HPS)路灯的单级电子镇流器的设计。从历史上看,HPS街道照明的工作时间是从日落到黎明,全亮度是12个小时。现有的常规路灯HPS由电磁镇流器供电。电磁镇流器是一种由线圈和铁心组成的设备。它是不受控制的设备,效率不高,并且在发出稳定光之前会产生闪烁。电子镇流器的使用提供了快速启动和高效节能的功能,但会产生电磁干扰和谐波。这将降低电路性能。为了克服这些问题,HPS灯使用了单级设计的电子镇流器。评估电磁干扰(EMI)和谐波对设计系统的影响。此过程分为三个不同的阶段: (i)有无EMI滤波器,(ii)半桥和(iii)全桥逆变器。对于阶段(ii)和(iii),评估了电子镇流器中产生的谐波的比较。电子镇流器的工作频率为68 kHz。研究结果表明,全桥逆变器的总谐波失真电流(THDi)为5.55%,而半桥逆变器的总谐波失真电流(THDi)为8.73%。使用全桥逆变器时,THD降低了36%。当前波形结果表明,没有EMI滤波器的情况下,原始波形降低了25%。 EMI和THDi的降低可以使街道照明系统和能源效率受益。

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